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Responsive temperature and pressure sensor design for in-situ prosthesis monitoring applications based on the piezoelectric and pyroelectric effects in lead zirconate titanate

2020-01-01

Abstract excerpt

This thesis presents the development of a sensor based on the pyroelectric and piezoelectric effects that can be used to measure both temperature and/or axial stress for specific use within a prosthetic socket, and more generally as a responsive temperature sensor capable of detecting high frequency skin temperature oscillations in medical diagnostic applications. Knowledge of an amputees’ residual limb skin tempe...

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Literature Corpus work
8a6c0234-c105-5e26-a301-b7bfd0b05509
DOI
10.48730/jpfb-ge73
Open publication

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Responsive temperature and pressure sensor design for in-situ prosthesis monitoring applications based on the piezoelectric and pyroelectric effects in lead zirconate titanateDOI 10.48730/jpfb-ge73
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